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1.
Oxid Med Cell Longev ; 2022: 7969825, 2022.
Article in English | MEDLINE | ID: mdl-35126821

ABSTRACT

The present study deals with extracellular synthesis and characterization of copper sulfide (CuS) nanoparticles using Aeromonas hydrophila, and the biological applications of the synthesized CuS like antibacterial, anti-inflammatory, and antioxidant activity were reported. Further, the toxicological effects of the CuS were evaluated using zebrafish as an animal model. The primary step of the synthesis was carried out by adding the precursor copper sulfates to the culture supernatant of Aeromonas hydrophila. The UV-visible spectrophotometer was used to characterize the synthesized nanoparticles, and the peak was obtained at 307 nm through the reduction process. Fourier transform infrared spectroscopy (FTIR) was involved to find out the functional groups (carboxylic acid, alcohols, alkanes, and nitro compounds) associated with copper sulfide nanoparticles (CuS-NPs). Atomic force microscopy (AFM) was used to characterize the CuS topographically, and a scanning electron microscope (SEM) revealed about 200 nm sized CuS nanoparticles with agglomerated structures. Overall, the characterized nanoparticles can be considered as a potential candidate with therapeutic proficiencies as antibacterial, antioxidant, and anti-inflammatory mediator/agents.


Subject(s)
Aeromonas hydrophila/metabolism , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/toxicity , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/toxicity , Antioxidants/chemistry , Antioxidants/toxicity , Copper/chemistry , Copper/toxicity , Metal Nanoparticles/chemistry , Metal Nanoparticles/toxicity , Sulfides/chemistry , Sulfides/toxicity , Zebrafish/metabolism , Animals , Cell Culture Techniques/methods , Copper Sulfate/metabolism , Erythrocytes/drug effects , Humans , Inhibitory Concentration 50 , Microbial Sensitivity Tests , Microscopy, Atomic Force/methods , Microscopy, Electron, Scanning/methods , Models, Animal , Particle Size , Spectroscopy, Fourier Transform Infrared/methods , Zebrafish/embryology
2.
Bioinorg Chem Appl ; 2021: 6267634, 2021.
Article in English | MEDLINE | ID: mdl-34659389

ABSTRACT

Phytosynthesis particles are the efficient activity of biomedical and environmental. In this present study, the green synthesis of titanium dioxide (TiO2) nanoparticles using the king of bitter herbal plant Andrographis paniculata was synthesized and characterized using XRD, SEM, HRTEM, AFM, and antimicrobial, antioxidant, and antidiabetic activities. The size of the particles HRTEM shows 50 nm, and SEM shows the spherical shape, which reveals the synthesis of TiO2 nanoparticles. XRD spectrum shows crystallinity of nanoparticles, and an average size is calculated about 22.97 nm. The phytosynthesis TiO2 shows the antioxidant and antidiabetic activities. Similarly, toxicity studies have demonstrated the hatching and viability LD 50 value of TiO2 250 µg/L. The current study's findings suggested that phytosynthesis TiO2 using extract of Andrographis paniculata exposure to potential hazard factors to biomedical and environmental uses.

3.
Biochem Biophys Rep ; 11: 46-57, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28955767

ABSTRACT

Nanotechnology is the formation, running and use of operation at the nanomaterial size scale (1-100 nm). Nanoscale materials can also be obtained by biological synthesis materials via eco-friendly green chemistry based technique. Current development and numerous strategies involved in the green synthesis of nanoparticles were focussed. This review mainly focused on plants which include scientific name, family name, common name, plant parts, its characterization, size and shape of the nanoparticles. Plant extract which was done experimentally gives its various characterization which leads to the identification of compounds of different nano size and shape. Biosynthesis of gold nanoparticles is in different shapes like spherical, rod, cubic, triangle and also in different sizes. Various application and importance of gold nanoparticles in numerous fields were discussed. The mark of the review is to provide an overview of recent learning in biosynthesized nanoparticles, its characterization and their potential applications.

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